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对上丘不可见的视觉事件的微扫视反应。

Microsaccadic response to visual events that are invisible to the superior colliculus.

作者信息

Valsecchi Matteo, Turatto Massimo

机构信息

Department of Cognitive Sciences and Education, University of Trento, Cortso Bettini 31, I-38068 Rovereto, Italy.

出版信息

Behav Neurosci. 2007 Aug;121(4):786-93. doi: 10.1037/0735-7044.121.4.786.

Abstract

Even when people think their eyes are still, tiny fixational eye movements, called microsaccades, occur at a rate of -1 Hz. Whenever a new (and potentially dangerous) event takes place in the visual field, the microsaccadic frequency is at first inhibited and then is followed by a rebound before the frequency returns to baseline. It has been suggested that this inhibition-rebound response is a type of oculomotor reflex mediated by the superior colliculus (SC), a midbrain structure involved in saccade programming. The present study investigated microsaccadic responses to visual events that were invisible to the SC; the authors recorded microsaccadic responses to visual oddballs when the latter were equiluminant with respect to the standard stimuli and when both oddballs and standards were equiluminant with respect to the background. Results showed that microsaccadic responses to oddballs and to standards were virtually identical both when the stimuli were visible to the SC and when they were invisible to it. Although the SC may be the generator of microsaccades, this research suggests that the specific fixational oculomotor activity in response to visual events can be controlled by other brain centers.

摘要

即使人们认为自己的眼睛静止不动时,仍会以每秒1次的频率出现微小的注视眼动,即微扫视。每当视野中出现新的(且可能有危险的)事件时,微扫视频率首先会受到抑制,随后在频率恢复到基线之前会出现反弹。有人提出,这种抑制-反弹反应是一种由上丘(SC)介导的眼动反射,上丘是参与扫视编程的中脑结构。本研究调查了对上丘不可见的视觉事件的微扫视反应;作者记录了视觉偏差刺激与标准刺激等亮度以及偏差刺激和标准刺激与背景均等亮度时对视觉偏差刺激的微扫视反应。结果表明,当刺激对上丘可见和不可见时,对偏差刺激和标准刺激的微扫视反应实际上是相同的。尽管上丘可能是微扫视的产生源,但这项研究表明,对视觉事件的特定注视眼动活动可由其他脑区控制。

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